The Discrete Wavelet Transform and Its Application for Noise Removal in Localized Corrosion Measurements

Author:

Ramos Rogelio1ORCID,Valdez-Salas Benjamin1ORCID,Zlatev Roumen1ORCID,Schorr Wiener Michael1ORCID,Bastidas Rull Jose María2

Affiliation:

1. Engineering Institute, Autonomous University of Baja California, Boulevard Benito Juarez, Insurgentes Este, 21280 Mexicali, BC, Mexico

2. National Center of Metallurgical Research (CENIM) Madrid, The Spanish State Council for Scientific Research (CSIC), Madrid, Spain

Abstract

The present work discusses the problem of induced external electrical noise as well as its removal from the electrical potential obtained from Scanning Vibrating Electrode Technique (SVET) in the pitting corrosion process of aluminum alloy A96061 in 3.5% NaCl. An accessible and efficient solution of this problem is presented with the use of virtual instrumentation (VI), embedded systems, and the discrete wavelet transform (DWT). The DWT is a computational algorithm for digital processing that allows obtaining electrical noise with Signal to Noise Ratio (SNR) superior to those obtained with Lock-In Amplifier equipment. The results show that DWT and the threshold method are efficient and powerful alternatives to carry out electrical measurements of potential signals from localized corrosion processes measured by SVET.

Funder

Materials Corrosion Laboratory of the UABC Institute of Engineering

Publisher

Hindawi Limited

Subject

Process Chemistry and Technology,General Materials Science

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